首页> 外文期刊>The Journal of Physiology >Tonic activation of group I mGluRs modulates inhibitory synaptic strength by regulating KCC2 activity.
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Tonic activation of group I mGluRs modulates inhibitory synaptic strength by regulating KCC2 activity.

机译:I组mGluRs的强直激活通过调节KCC2活性来调节抑制性突触强度。

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The furosemide-sensitive potassium-chloride cotransporter (KCC2) plays an important role in establishing the intracellular chloride concentration in many neurons within the central nervous system. Consequently, modulation of KCC2 function will regulate the reversal potential for synaptic GABAergic inputs, thus setting the strength of inhibitory transmission. We show that tonic activation of group I metabotropic glutamate receptors (mGluR1s) regulates inhibitory synaptic strength via modulation of KCC2 function in pyramidal neurons of the hippocampal CA3 area. Specifically, group I mGluRs signal via activation of a protein kinase C-dependent pathway to alter KCC2 activity, thereby altering the intracellular chloride concentration, and thus inhibitory synaptic input. This interaction between the glutamatergic and chloride transport systems highlights a novel homeostatic mechanism whereby ambient glutamate levels directly regulate the inhibitory synaptic tone by setting the activity level of KCC2. Thus, mGluRs are poised to play a pivotal role in providing a direct interplay between the excitatory and inhibitory systems in the hippocampus.
机译:速尿敏感的氯化钾共转运蛋白(KCC2)在建立中枢神经系统中许多神经元的细胞内氯化物浓度方面起着重要作用。因此,调节KCC2功能将调节突触GABA能输入的逆转潜力,从而设定抑制性传递的强度。我们显示,I组代谢型谷氨酸受体(mGluR1s)的补品激活调节海马CA3区锥体神经元中KCC2功能的调节抑制突触强度。具体而言,I组mGluRs通过激活蛋白激酶C依赖性途径来改变KCC2活性,从而改变细胞内氯的浓度,从而抑制突触输入,从而发出信号。谷氨酸能和氯离子转运系统之间的这种相互作用突出了一种新的体内平衡机制,其中环境谷氨酸水平通过设定KCC2的活性水平直接调节抑制性突触的语调。因此,mGluRs可能在海马兴奋性和抑制性系统之间提供直接相互作用方面起着关键作用。

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